化学
三元运算
异质结
氧化剂
光催化
氧化还原
量子点
降级(电信)
对偶(语法数字)
电子转移
反应速率常数
化学工程
表面光电压
光化学
价(化学)
咪唑酯
傅里叶变换红外光谱
光谱学
双重角色
载流子
电子
光电子学
可见光谱
工作职能
纳米材料基催化剂
导带
催化作用
作者
Yu Qiao,Hao Lü,Xusheng Wang,Xiangxin Xue,Juan Jian,Zhuo Wang,Peng Wang,Guangfu Liao
出处
期刊:Inorganic Chemistry
[American Chemical Society]
日期:2025-10-14
卷期号:64 (42): 21212-21226
被引量:4
标识
DOI:10.1021/acs.inorgchem.5c03972
摘要
Constructing dual S-scheme heterojunctions is an innovative strategy to boost photocatalysis by promoting photoinduced charge migration and retaining high redox potentials. Herein, we developed a facile green method to prepare g-C3N4 quantum dots (QDs)/HKUST-1/TiO2 dual S-scheme heterojunctions via depositing g-C3N4 QDs in situ on spherical HKUST-1/TiO2. 15% g-C3N4 QDs/HKUST-1/TiO2 exhibited a significantly enhanced tetracycline (TC) degradation performance (97.02% degradation rate, 0.02177 min-1 reaction rate constant (kapp)) compared to g-C3N4 QDs and HKUST-1/TiO2, attributed to the enlarged specific surface area and accelerated charge separation (verified by experiments). It also showed excellent photostability. ESR confirmed •O2-, •OH, and h+ as key active species. LC-MS and online FTIR spectroscopy analyzed TC degradation intermediates, pathways, and toxicity. Finally, experimental combined with theoretical calculation results further elucidated the possible dual S-scheme mechanism. The dual S-scheme mechanism endows this system with a relatively high redox capacity, fully utilizing the reducing ability of electrons on the conduction band of g-C3N4 QDs and the oxidizing ability of holes on the valence band of TiO2. This work is contributory to designing novel dual S-scheme photocatalysts and efficient purification of wastewater in environmental remediation.
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